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Numerical Analysis of AFRP Reinforced Concrete Columns with Replaceable Structural Fuses as Energy Dissipaters under Cyclic Loading

机译:可更换结构保险丝的AFRP钢筋混凝土柱的数值分析,作为循环载荷下的能量耗水

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Fiber-reinforced polymer (FRP) bars are gaining increased use in the construction market as a replacement to steel reinforcement for concrete structures. However, their use as compression members is limited due to their mechanical properties, typically low flexural rigidity, so that local buckling may occur at relatively low stress levels. Their premature rupture in RC columns could be eliminated by enhancing the columns' response elastically and concentrating damage to the externally installed, replaceable post-tensioned structural fuses. This paper is part of a larger numerical and experimental investigation to develop and validate design methods for a rocking Aramid fiber reinforced polymer reinforced concrete column. The numerical study, implemented using the Extreme Loading for Structures (ELS) software, consists of a total of thirteen columns. The columns were subjected to axial load followed by cyclic lateral load up to failure to examine the effectiveness of the rocking connection and overall response. The effect of key variables such as longitudinal bar ratio, structural fuse sizes and tie spacing was investigated. Ductility and energy dissipation gains of the rocking AFRP RC columns were compared to that of the conventionally reinforced steel column, and expected performance of the rocking connection was achieved.
机译:纤维增强聚合物(FRP)棒在建筑市场中使用增加使用作为混凝土结构的钢筋替代品。然而,由于它们的机械性能,通常是低弯曲刚度,因此它们的用途受到限制,从而可能在相对低的应力水平下发生局部屈曲。通过在弹性和集中损坏的外部安装,可更换的后张紧的结构保险丝中,可以通过增强柱子的响应来消除RC色谱柱的过早破裂。本文是较大的数值和实验研究的一部分,用于开发和验证摇摆芳纶纤维增强聚合物钢筋混凝土柱的设计方法。利用结构(ELS)软件的极端负载实现的数值研究包括总共十三列。将柱对轴向载荷进行轴向载荷,然后循环横向载荷,以检查摇摆连接和整体反应的有效性。研究了诸如纵向杆比,结构保险丝尺寸和系带间距的关键变量的效果。将摇摆AFRP RC柱的延展性和能量耗散增益与常规增强钢柱的稳定性相比,实现了摇摆连接的预期性能。

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